Jiang Han-Kai, Weng Jui-Hung, Wang Yi-Hui, Tsou Jo-Chu, Chen Pei-Jung, Ko An-Li Andrea, Söll Dieter, Tsai Ming-Daw, Wang Yane-Shih
Institute of Biological Chemistry, Academia Sinica, Taipei, Taiwan.
Taiwan International Graduate Program Chemical Biology and Molecular Biophysics, Institute of Biological Chemistry, Academia Sinica, Taipei, Taiwan.
Front Genet. 2023 Oct 13;14:1277489. doi: 10.3389/fgene.2023.1277489. eCollection 2023.
Once thought to be non-naturally occurring, D-amino acids (DAAs) have in recent years been revealed to play a wide range of physiological roles across the tree of life, including in human systems. Synthetic biologists have since exploited DAAs' unique biophysical properties to generate peptides and proteins with novel or enhanced functions. However, while peptides and small proteins containing DAAs can be efficiently prepared , producing large-sized heterochiral proteins poses as a major challenge mainly due to absence of pre-existing DAA translational machinery and presence of endogenous chiral discriminators. Based on our previous work demonstrating pyrrolysyl-tRNA synthetase's (PylRS') remarkable substrate polyspecificity, this work attempts to increase PylRS' ability in directly charging tRNA with D-phenylalanine analogs (DFAs). We here report a novel, polyspecific PylRS mutant, DFRS2, capable of incorporating DFAs into proteins via ribosomal synthesis . To validate its utility, translational DAA substitution were performed in superfolder green fluorescent protein and human heavy chain ferritin, successfully altering both proteins' physiochemical properties. Furthermore, aminoacylation kinetic assays further demonstrated aminoacylation of DFAs by DFRS2 .
D-氨基酸(DAA)曾被认为是非天然存在的,但近年来已发现其在整个生命树中发挥着广泛的生理作用,包括在人体系统中。自那以后,合成生物学家利用DAA独特的生物物理特性来生成具有新功能或增强功能的肽和蛋白质。然而,虽然含有DAA的肽和小蛋白质可以高效制备,但生产大型异手性蛋白质却是一项重大挑战,主要原因是缺乏预先存在的DAA翻译机制以及存在内源性手性鉴别器。基于我们之前证明吡咯赖氨酸-tRNA合成酶(PylRS)具有显著底物多特异性的工作,这项工作试图提高PylRS直接用D-苯丙氨酸类似物(DFA)对tRNA进行氨酰化的能力。我们在此报告一种新型的多特异性PylRS突变体DFRS2,它能够通过核糖体合成将DFA掺入蛋白质中。为了验证其效用,在超级文件夹绿色荧光蛋白和人重链铁蛋白中进行了翻译DAA替换,成功改变了这两种蛋白质的理化性质。此外,氨酰化动力学分析进一步证明了DFRS2对DFA的氨酰化作用。